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Structure vs. properties — chirality, optics and shapes — in amphiphilic porphyrin J-aggregates

机译:两性卟啉J聚集体的结构与性质-手性,光学性质和形状

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The structure of the meso-tetrakis(4-sulfonatophenyl)porphyrin (TPPS4) J-aggregates could be determined by X-ray and electron diffraction methods. A sheet-like architecture reveals the relationship between structure and chirality, optics and shapes of the J-aggregates of the meso 4-sulfonatophenyl- and phenyl-substituted porphyrins. The structure of the J-aggregates of H4TPPS4 belongs to the chiral space group P2_1 and includes four porphyrin molecules in its unit cell. The intermolecular stabilization of the zwitterionic units by hydrogen bonding and electrostatic interactions between the positively charged central NH groups and the periphery anionic sulfonato groups results in a structure of porphyrins sheets along the [101] plane direction. The structure of the sheet on the [101] plane is already chiral and its molecular architecture explains the simultaneous presence of H- and J-aggregate bands in their absorption spectra. This structure also accounts for the high similarity observed between the absorption spectra of different mesomorphs of the same substance and even between different members of the series of meso-4-sulfonatophenyl- and aryl-substituted diprotonated porphyrins. The possibility, or not, of the sheet-like structure on [101] to interact with other layers, either through ionic or hydrophobic interactions, depends on the substitution pattern at the meso-positions of the porphyrin ring. Thus, the different morphologies of the particles [mono- bi- and multilayered] of this series of J-aggregates are explained taking into account the role that the fourth meso-substituent plays in the interlayer stabilization. The results suggest that supramolecular helicity, previously detected in several J-aggregates, is not the explanation of their chirality but would be the expression of the intrinsic chirality of the packing between building blocks.
机译:介孔四(4-磺酰基苯基)卟啉(TPPS4)J-聚集体的结构可以通过X射线和电子衍射方法确定。片状结构揭示了内消旋4-磺酰基苯基和苯基取代的卟啉的J-聚集体的结构与手性,光学和形状之间的关系。 H4TPPS4的J-聚集体的结构属于手性空间群P2_1,并且在其单位细胞中包括四个卟啉分子。两性离子单元的分子间稳定作用是通过氢键和带正电的中心NH基团与周围的阴离子磺酸根基团之间的静电相互作用导致的,卟啉薄片沿[101]平面方向结构。薄片在[101]平面上的结构已经是手性的,其分子结构解释了在其吸收光谱中同时存在H和J聚集带。这种结构还解释了在相同物质的不同介晶型的吸收光谱之间,甚至在一系列介孔的4-磺酰基苯基和芳基取代的双质子化卟啉的不同成员之间观察到的高度相似性。 [101]上的片状结构是否通过离子或疏水相互作用与其他层相互作用的可能性取决于卟啉环介孔位置的取代方式。因此,考虑到第四内消旋取代基在层间稳定中所起的作用,解释了该系列J-聚集体的颗粒[单-双和多层]的不同形态。结果表明,先前在数个J聚集体中检测到的超分子螺旋结构不是其手性的解释,而是构造单元之间堆积的固有手性的表达。

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